MAX32620HSP (MAXREFDES100) RPC Example for Graphical User Interface

Dependencies:   USBDevice

Fork of HSP_Release by Jerry Bradshaw

This is an example program for the MAX32620HSP (MAXREFDES100 Health Sensor Platform). It demonstrates all the features of the platform and works with a companion graphical user interface (GUI) to help evaluate/configure/monitor the board. Go to the MAXREFDES100 product page and click on "design resources" to download the companion software. The GUI connects to the board through an RPC interface on a virtual serial port over the USB interface.

The RPC interface provides access to all the features of the board and is available to interface with other development environments such Matlab. This firmware provides realtime data streaming through the RPC interface over USB, and also provides the ability to log the data to flash for untethered battery operation. The data logging settings are configured through the GUI, and the GUI also provides the interface to download logged data.

Details on the RPC interface can be found here: HSP RPC Interface Documentation

Windows

With this program loaded, the MAX32620HSP will appear on your computer as a serial port. On Mac and Linux, this will happen by default. For Windows, you need to install a driver: HSP serial port windows driver

For more details about this platform and how to use it, see the MAXREFDES100 product page.

Committer:
jbradshaw
Date:
Tue Oct 25 15:22:11 2016 +0000
Revision:
0:e4a10ed6eb92
Child:
1:9490836294ea
tewt

Who changed what in which revision?

UserRevisionLine numberNew contents of line
jbradshaw 0:e4a10ed6eb92 1 /*******************************************************************************
jbradshaw 0:e4a10ed6eb92 2 * Copyright (C) 2016 Maxim Integrated Products, Inc., All Rights Reserved.
jbradshaw 0:e4a10ed6eb92 3 *
jbradshaw 0:e4a10ed6eb92 4 * Permission is hereby granted, free of charge, to any person obtaining a
jbradshaw 0:e4a10ed6eb92 5 * copy of this software and associated documentation files (the "Software"),
jbradshaw 0:e4a10ed6eb92 6 * to deal in the Software without restriction, including without limitation
jbradshaw 0:e4a10ed6eb92 7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
jbradshaw 0:e4a10ed6eb92 8 * and/or sell copies of the Software, and to permit persons to whom the
jbradshaw 0:e4a10ed6eb92 9 * Software is furnished to do so, subject to the following conditions:
jbradshaw 0:e4a10ed6eb92 10 *
jbradshaw 0:e4a10ed6eb92 11 * The above copyright notice and this permission notice shall be included
jbradshaw 0:e4a10ed6eb92 12 * in all copies or substantial portions of the Software.
jbradshaw 0:e4a10ed6eb92 13 *
jbradshaw 0:e4a10ed6eb92 14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
jbradshaw 0:e4a10ed6eb92 15 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
jbradshaw 0:e4a10ed6eb92 16 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
jbradshaw 0:e4a10ed6eb92 17 * IN NO EVENT SHALL MAXIM INTEGRATED BE LIABLE FOR ANY CLAIM, DAMAGES
jbradshaw 0:e4a10ed6eb92 18 * OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
jbradshaw 0:e4a10ed6eb92 19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
jbradshaw 0:e4a10ed6eb92 20 * OTHER DEALINGS IN THE SOFTWARE.
jbradshaw 0:e4a10ed6eb92 21 *
jbradshaw 0:e4a10ed6eb92 22 * Except as contained in this notice, the name of Maxim Integrated
jbradshaw 0:e4a10ed6eb92 23 * Products, Inc. shall not be used except as stated in the Maxim Integrated
jbradshaw 0:e4a10ed6eb92 24 * Products, Inc. Branding Policy.
jbradshaw 0:e4a10ed6eb92 25 *
jbradshaw 0:e4a10ed6eb92 26 * The mere transfer of this software does not imply any licenses
jbradshaw 0:e4a10ed6eb92 27 * of trade secrets, proprietary technology, copyrights, patents,
jbradshaw 0:e4a10ed6eb92 28 * trademarks, maskwork rights, or any other form of intellectual
jbradshaw 0:e4a10ed6eb92 29 * property whatsoever. Maxim Integrated Products, Inc. retains all
jbradshaw 0:e4a10ed6eb92 30 * ownership rights.
jbradshaw 0:e4a10ed6eb92 31 *******************************************************************************
jbradshaw 0:e4a10ed6eb92 32 */
jbradshaw 0:e4a10ed6eb92 33 #include "MAX30101_RPC.h"
jbradshaw 0:e4a10ed6eb92 34 #include "StringHelper.h"
jbradshaw 0:e4a10ed6eb92 35 #include "MAX30101.h"
jbradshaw 0:e4a10ed6eb92 36 #include "Streaming.h"
jbradshaw 0:e4a10ed6eb92 37 #include "RpcFifo.h"
jbradshaw 0:e4a10ed6eb92 38 #include "RpcServer.h"
jbradshaw 0:e4a10ed6eb92 39 #include "StringInOut.h"
jbradshaw 0:e4a10ed6eb92 40 #include "MAX30101_helper.h"
jbradshaw 0:e4a10ed6eb92 41 #include "LIS2DH.h"
jbradshaw 0:e4a10ed6eb92 42 #include "Peripherals.h"
jbradshaw 0:e4a10ed6eb92 43 #include "DataLoggingService.h"
jbradshaw 0:e4a10ed6eb92 44
jbradshaw 0:e4a10ed6eb92 45 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 46 int MAX30101_WriteReg(char argStrs[32][32], char replyStrs[32][32]) {
jbradshaw 0:e4a10ed6eb92 47 uint8_t args[2];
jbradshaw 0:e4a10ed6eb92 48 uint8_t reply[1];
jbradshaw 0:e4a10ed6eb92 49 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 50 // Peripherals::max30101()->writeReg(args[0] , args[1]); // pass in the register address and the data
jbradshaw 0:e4a10ed6eb92 51 reply[0] = 0x80;
jbradshaw 0:e4a10ed6eb92 52 FormatReply(reply, sizeof(reply), replyStrs);
jbradshaw 0:e4a10ed6eb92 53 return 0;
jbradshaw 0:e4a10ed6eb92 54 }
jbradshaw 0:e4a10ed6eb92 55
jbradshaw 0:e4a10ed6eb92 56 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 57 int MAX30101_ReadReg(char argStrs[32][32], char replyStrs[32][32]) {
jbradshaw 0:e4a10ed6eb92 58 uint8_t args[1];
jbradshaw 0:e4a10ed6eb92 59 uint8_t reply[1];
jbradshaw 0:e4a10ed6eb92 60 char value;
jbradshaw 0:e4a10ed6eb92 61 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 62 // Peripherals::max30101()->readReg(args[0] , &value, 1);
jbradshaw 0:e4a10ed6eb92 63 reply[0] = (uint8_t)value;
jbradshaw 0:e4a10ed6eb92 64 FormatReply(reply, sizeof(reply), replyStrs);
jbradshaw 0:e4a10ed6eb92 65 return 0;
jbradshaw 0:e4a10ed6eb92 66 }
jbradshaw 0:e4a10ed6eb92 67
jbradshaw 0:e4a10ed6eb92 68 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 69 int MAX30101_COMMinit(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 70 {
jbradshaw 0:e4a10ed6eb92 71 uint8_t args[4];
jbradshaw 0:e4a10ed6eb92 72 uint8_t return_value;
jbradshaw 0:e4a10ed6eb92 73 ProcessArgs(argStrs,args,sizeof(args));
jbradshaw 0:e4a10ed6eb92 74
jbradshaw 0:e4a10ed6eb92 75 //return_value = max30101_COMMinit(args[0], args[1], args[2], args[3]);
jbradshaw 0:e4a10ed6eb92 76
jbradshaw 0:e4a10ed6eb92 77 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 78 return return_value;
jbradshaw 0:e4a10ed6eb92 79 }
jbradshaw 0:e4a10ed6eb92 80
jbradshaw 0:e4a10ed6eb92 81 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 82 int MAX30101_SpO2mode_stop(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 83 {
jbradshaw 0:e4a10ed6eb92 84 uint8_t args[4];
jbradshaw 0:e4a10ed6eb92 85 uint8_t return_value;
jbradshaw 0:e4a10ed6eb92 86 ProcessArgs(argStrs,args,sizeof(args));
jbradshaw 0:e4a10ed6eb92 87
jbradshaw 0:e4a10ed6eb92 88 //lis2dh_Stop();
jbradshaw 0:e4a10ed6eb92 89 //max30101_SpO2mode_stop();
jbradshaw 0:e4a10ed6eb92 90 Peripherals::max30101()->SpO2mode_stop();
jbradshaw 0:e4a10ed6eb92 91
jbradshaw 0:e4a10ed6eb92 92 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 93 return return_value;
jbradshaw 0:e4a10ed6eb92 94 }
jbradshaw 0:e4a10ed6eb92 95
jbradshaw 0:e4a10ed6eb92 96 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 97 int MAX30101_HRmode_stop(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 98 {
jbradshaw 0:e4a10ed6eb92 99 uint8_t args[4];
jbradshaw 0:e4a10ed6eb92 100 ProcessArgs(argStrs,args,sizeof(args));
jbradshaw 0:e4a10ed6eb92 101
jbradshaw 0:e4a10ed6eb92 102 //lis2dh_Stop();
jbradshaw 0:e4a10ed6eb92 103 Peripherals::max30101()->HRmode_stop();
jbradshaw 0:e4a10ed6eb92 104
jbradshaw 0:e4a10ed6eb92 105 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 106 return 0;
jbradshaw 0:e4a10ed6eb92 107 }
jbradshaw 0:e4a10ed6eb92 108
jbradshaw 0:e4a10ed6eb92 109 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 110 int MAX30101_Multimode_stop(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 111 {
jbradshaw 0:e4a10ed6eb92 112 uint8_t args[4];
jbradshaw 0:e4a10ed6eb92 113 ProcessArgs(argStrs,args,sizeof(args));
jbradshaw 0:e4a10ed6eb92 114
jbradshaw 0:e4a10ed6eb92 115 //lis2dh_Stop();
jbradshaw 0:e4a10ed6eb92 116 Peripherals::max30101()->Multimode_stop();
jbradshaw 0:e4a10ed6eb92 117
jbradshaw 0:e4a10ed6eb92 118 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 119 return 0;
jbradshaw 0:e4a10ed6eb92 120 }
jbradshaw 0:e4a10ed6eb92 121
jbradshaw 0:e4a10ed6eb92 122 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 123 void ClearInOutFifos() {
jbradshaw 0:e4a10ed6eb92 124 fifo_clear(GetStreamOutFifo()); // clear stream out fifo
jbradshaw 0:e4a10ed6eb92 125 fifo_clear(GetUSBIncomingFifo()); // clear USB serial incoming fifo
jbradshaw 0:e4a10ed6eb92 126 }
jbradshaw 0:e4a10ed6eb92 127
jbradshaw 0:e4a10ed6eb92 128 int highDataRate = 0;
jbradshaw 0:e4a10ed6eb92 129 #define MAX30101_200HZ 2
jbradshaw 0:e4a10ed6eb92 130 #define MAX30101_400HZ 3
jbradshaw 0:e4a10ed6eb92 131
jbradshaw 0:e4a10ed6eb92 132 /**
jbradshaw 0:e4a10ed6eb92 133 * Adjust the threshold of the Accel based on the data rate
jbradshaw 0:e4a10ed6eb92 134 * @lis2dhDataRate Data rate of the accel to determine what would be a good threshold value
jbradshaw 0:e4a10ed6eb92 135 */
jbradshaw 0:e4a10ed6eb92 136 static int adjustAccelThreshold(int lis2dhDataRate) {
jbradshaw 0:e4a10ed6eb92 137 int lis2dhFifoThreshold;
jbradshaw 0:e4a10ed6eb92 138 lis2dhFifoThreshold = 31;
jbradshaw 0:e4a10ed6eb92 139 if (lis2dhDataRate <= LIS2DH_DATARATE_50HZ) lis2dhFifoThreshold = 4;
jbradshaw 0:e4a10ed6eb92 140 if (lis2dhDataRate == LIS2DH_DATARATE_100HZ) lis2dhFifoThreshold = 8;
jbradshaw 0:e4a10ed6eb92 141 return lis2dhFifoThreshold;
jbradshaw 0:e4a10ed6eb92 142 }
jbradshaw 0:e4a10ed6eb92 143
jbradshaw 0:e4a10ed6eb92 144 /**
jbradshaw 0:e4a10ed6eb92 145 * Evaluate the data rate of the Accel to see if we should stream using a high data rate mode
jbradshaw 0:e4a10ed6eb92 146 * @lis2dhDataRate Data rate of the accel to determine if this is a high data rate
jbradshaw 0:e4a10ed6eb92 147 */
jbradshaw 0:e4a10ed6eb92 148 static void adjustHighDataRate(int lis2dhDataRate) {
jbradshaw 0:e4a10ed6eb92 149 highDataRate = 0;
jbradshaw 0:e4a10ed6eb92 150 if (lis2dhDataRate >= LIS2DH_DATARATE_200HZ) highDataRate = 1;
jbradshaw 0:e4a10ed6eb92 151 }
jbradshaw 0:e4a10ed6eb92 152
jbradshaw 0:e4a10ed6eb92 153 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 154 int MAX30101_SpO2mode_init(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 155 {
jbradshaw 0:e4a10ed6eb92 156 uint8_t args[7];
jbradshaw 0:e4a10ed6eb92 157 uint8_t lis2dhDataRate;
jbradshaw 0:e4a10ed6eb92 158 uint8_t lis2dhFifoThreshold;
jbradshaw 0:e4a10ed6eb92 159 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 160
jbradshaw 0:e4a10ed6eb92 161 ClearInOutFifos();
jbradshaw 0:e4a10ed6eb92 162 MAX30101_Helper_SetStreamingFlag(eStreaming_SPO2,1);
jbradshaw 0:e4a10ed6eb92 163 Peripherals::max30101()->SpO2mode_init(args[0], args[1], args[2], args[3], args[4], args[5]);
jbradshaw 0:e4a10ed6eb92 164
jbradshaw 0:e4a10ed6eb92 165 lis2dhDataRate = args[6];
jbradshaw 0:e4a10ed6eb92 166 lis2dhFifoThreshold = adjustAccelThreshold(lis2dhDataRate);
jbradshaw 0:e4a10ed6eb92 167 adjustHighDataRate(lis2dhDataRate);
jbradshaw 0:e4a10ed6eb92 168
jbradshaw 0:e4a10ed6eb92 169 Peripherals::lis2dh()->initStart(lis2dhDataRate,lis2dhFifoThreshold);
jbradshaw 0:e4a10ed6eb92 170 LoggingService_StartLoggingUsb();
jbradshaw 0:e4a10ed6eb92 171
jbradshaw 0:e4a10ed6eb92 172 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 173 return 0;
jbradshaw 0:e4a10ed6eb92 174 }
jbradshaw 0:e4a10ed6eb92 175
jbradshaw 0:e4a10ed6eb92 176 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 177 int MAX30101_SpO2mode_InitStart(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 178 {
jbradshaw 0:e4a10ed6eb92 179 uint8_t args[6]; // Size
jbradshaw 0:e4a10ed6eb92 180 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 181
jbradshaw 0:e4a10ed6eb92 182 ClearInOutFifos();
jbradshaw 0:e4a10ed6eb92 183 MAX30101_Helper_SetStreamingFlag(eStreaming_SPO2,1);
jbradshaw 0:e4a10ed6eb92 184 if (args[2] >= MAX30101_200HZ) highDataRate = 1;
jbradshaw 0:e4a10ed6eb92 185 Peripherals::max30101()->SpO2mode_init(args[0], args[1], args[2], args[3], args[4], args[5]);
jbradshaw 0:e4a10ed6eb92 186
jbradshaw 0:e4a10ed6eb92 187 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 188 return 0;
jbradshaw 0:e4a10ed6eb92 189 }
jbradshaw 0:e4a10ed6eb92 190
jbradshaw 0:e4a10ed6eb92 191 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 192 int MAX30101_HRmode_init(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 193 {
jbradshaw 0:e4a10ed6eb92 194 uint8_t args[6];
jbradshaw 0:e4a10ed6eb92 195 uint8_t lis2dhDataRate;
jbradshaw 0:e4a10ed6eb92 196 uint8_t lis2dhFifoThreshold;
jbradshaw 0:e4a10ed6eb92 197 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 198
jbradshaw 0:e4a10ed6eb92 199 ClearInOutFifos();
jbradshaw 0:e4a10ed6eb92 200 MAX30101_Helper_SetStreamingFlag(eStreaming_HR,1);
jbradshaw 0:e4a10ed6eb92 201 Peripherals::max30101()->HRmode_init(args[0], args[1], args[2], args[3], args[4]);
jbradshaw 0:e4a10ed6eb92 202
jbradshaw 0:e4a10ed6eb92 203 lis2dhDataRate = args[5];
jbradshaw 0:e4a10ed6eb92 204 lis2dhFifoThreshold = adjustAccelThreshold(lis2dhDataRate);
jbradshaw 0:e4a10ed6eb92 205 adjustHighDataRate(lis2dhDataRate);
jbradshaw 0:e4a10ed6eb92 206
jbradshaw 0:e4a10ed6eb92 207 Peripherals::lis2dh()->initStart(lis2dhDataRate,lis2dhFifoThreshold);
jbradshaw 0:e4a10ed6eb92 208 LoggingService_StartLoggingUsb();
jbradshaw 0:e4a10ed6eb92 209 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 210 return 0;
jbradshaw 0:e4a10ed6eb92 211 }
jbradshaw 0:e4a10ed6eb92 212
jbradshaw 0:e4a10ed6eb92 213 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 214 int MAX30101_HRmode_InitStart(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 215 {
jbradshaw 0:e4a10ed6eb92 216 uint8_t args[5];
jbradshaw 0:e4a10ed6eb92 217 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 218
jbradshaw 0:e4a10ed6eb92 219 ClearInOutFifos();
jbradshaw 0:e4a10ed6eb92 220 MAX30101_Helper_SetStreamingFlag(eStreaming_HR,1);
jbradshaw 0:e4a10ed6eb92 221 if (args[2] >= MAX30101_200HZ) highDataRate = 1;
jbradshaw 0:e4a10ed6eb92 222 Peripherals::max30101()->HRmode_init(args[0], args[1], args[2], args[3], args[4]);
jbradshaw 0:e4a10ed6eb92 223 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 224 return 0;
jbradshaw 0:e4a10ed6eb92 225 }
jbradshaw 0:e4a10ed6eb92 226
jbradshaw 0:e4a10ed6eb92 227 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 228 int MAX30101_Multimode_init(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 229 {
jbradshaw 0:e4a10ed6eb92 230 uint8_t args[12];
jbradshaw 0:e4a10ed6eb92 231 uint8_t lis2dhDataRate;
jbradshaw 0:e4a10ed6eb92 232 uint8_t lis2dhFifoThreshold;
jbradshaw 0:e4a10ed6eb92 233 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 234
jbradshaw 0:e4a10ed6eb92 235 ClearInOutFifos();
jbradshaw 0:e4a10ed6eb92 236
jbradshaw 0:e4a10ed6eb92 237 lis2dhDataRate = args[11];
jbradshaw 0:e4a10ed6eb92 238 lis2dhFifoThreshold = adjustAccelThreshold(lis2dhDataRate);
jbradshaw 0:e4a10ed6eb92 239 adjustHighDataRate(lis2dhDataRate);
jbradshaw 0:e4a10ed6eb92 240
jbradshaw 0:e4a10ed6eb92 241 Peripherals::lis2dh()->initStart(lis2dhDataRate,lis2dhFifoThreshold);
jbradshaw 0:e4a10ed6eb92 242
jbradshaw 0:e4a10ed6eb92 243 wait(0.1f);
jbradshaw 0:e4a10ed6eb92 244 MAX30101_Helper_SetStreamingFlag(eStreaming_MULTI, 1);
jbradshaw 0:e4a10ed6eb92 245 Peripherals::max30101()->Multimode_init(args[0], args[1], args[2],
jbradshaw 0:e4a10ed6eb92 246 args[3], args[4], args[5], args[6],
jbradshaw 0:e4a10ed6eb92 247 args[7], args[8], args[9], args[10]);
jbradshaw 0:e4a10ed6eb92 248 LoggingService_StartLoggingUsb();
jbradshaw 0:e4a10ed6eb92 249
jbradshaw 0:e4a10ed6eb92 250 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 251 return 0;
jbradshaw 0:e4a10ed6eb92 252 }
jbradshaw 0:e4a10ed6eb92 253
jbradshaw 0:e4a10ed6eb92 254 //******************************************************************************
jbradshaw 0:e4a10ed6eb92 255 int MAX30101_Multimode_InitStart(char argStrs[32][32], char replyStrs[32][32])
jbradshaw 0:e4a10ed6eb92 256 {
jbradshaw 0:e4a10ed6eb92 257 uint8_t args[11];
jbradshaw 0:e4a10ed6eb92 258 ProcessArgs(argStrs, args, sizeof(args));
jbradshaw 0:e4a10ed6eb92 259
jbradshaw 0:e4a10ed6eb92 260 ClearInOutFifos();
jbradshaw 0:e4a10ed6eb92 261 MAX30101_Helper_SetStreamingFlag(eStreaming_MULTI, 1);
jbradshaw 0:e4a10ed6eb92 262 if (args[2] >= MAX30101_200HZ) highDataRate = 1;
jbradshaw 0:e4a10ed6eb92 263 Peripherals::max30101()->Multimode_init(args[0], args[1], args[2],
jbradshaw 0:e4a10ed6eb92 264 args[3], args[4], args[5], args[6],
jbradshaw 0:e4a10ed6eb92 265 args[7], args[8], args[9], args[10]);
jbradshaw 0:e4a10ed6eb92 266
jbradshaw 0:e4a10ed6eb92 267 strcpy(replyStrs[0],"80");
jbradshaw 0:e4a10ed6eb92 268 return 0;
jbradshaw 0:e4a10ed6eb92 269 }
jbradshaw 0:e4a10ed6eb92 270
jbradshaw 0:e4a10ed6eb92 271
jbradshaw 0:e4a10ed6eb92 272